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利用 robosurfer 程序系统实现高维反应势能面的自动化开发。

Automating the Development of High-Dimensional Reactive Potential Energy Surfaces with the robosurfer Program System.

机构信息

MTA-SZTE Lendület Computational Reaction Dynamics Research Group, Interdisciplinary Excellence Centre and Department of Physical Chemistry and Materials Science, Institute of Chemistry , University of Szeged , Rerrich Béla tér 1 , Szeged H-6720 , Hungary.

出版信息

J Chem Theory Comput. 2020 Jan 14;16(1):51-66. doi: 10.1021/acs.jctc.9b01006. Epub 2020 Jan 2.

Abstract

The construction of high-dimensional global potential energy surfaces (PESs) from data has been a major challenge for decades. Advances in computer hardware, electronic structure theory, and PES fitting methods have greatly alleviated many challenges in PES construction, but building fitting sets has remained a bottleneck so far. We present the robosurfer program system that completely automates the generation of new geometries, performs computations, and iteratively improves the PES under development. Unlike previous efforts to automate PES development, robosurfer does not require any uncertainty estimate from the PES fitting method and thus it is compatible with the permutationally invariant polynomial (PIP) method. As a demonstration we have developed five related but different global reactive PIP PESs for the CHBr + F system and used them to perform quasiclassical trajectory (QCT) reaction dynamics simulations over a wide range of collision energies. The automatically developed PESs show good to excellent accuracy at known stationary points without any manual sampling, and QCT results indicate the lack of unphysical minima on the fitted surfaces. We also present evidence suggesting that the breakdown of single reference electronic structure theory may contribute significantly to the fitting errors of global reactive PESs.

摘要

几十年来,从数据构建高维全局势能面(PES)一直是一个主要挑战。计算机硬件、电子结构理论和 PES 拟合方法的进步极大地缓解了 PES 构建中的许多挑战,但构建拟合集至今仍是一个瓶颈。我们提出了 robosurfer 程序系统,该系统完全自动化生成新的几何形状、执行计算,并迭代改进正在开发的 PES。与以前自动化 PES 开发的努力不同,robosurfer 不需要来自 PES 拟合方法的任何不确定性估计,因此它与排列不变多项式(PIP)方法兼容。作为演示,我们为 CHBr + F 系统开发了五个相关但不同的全局反应性 PIP PES,并使用它们在广泛的碰撞能范围内进行准经典轨迹(QCT)反应动力学模拟。自动开发的 PES 在没有任何手动采样的情况下,在已知的稳定点处表现出良好到极好的准确性,QCT 结果表明拟合表面上不存在不合理的最小值。我们还提供了证据表明,单参考电子结构理论的失效可能会对全局反应性 PES 的拟合误差产生重大影响。

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